Data for arXiv:2503.07751: "Heat-to-motion conversion for quantum active matter"

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Main Authors: Penner, Alexander-Georg, Viotti, Ludmila, Fazio, Rosario, von Oppen, Felix, Arrachea, Liliana
Format: Recurso digital
Published: Zenodo 2025
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author Penner, Alexander-Georg
Viotti, Ludmila
Fazio, Rosario
von Oppen, Felix
Arrachea, Liliana
author_facet Penner, Alexander-Georg
Viotti, Ludmila
Fazio, Rosario
von Oppen, Felix
Arrachea, Liliana
contents <p><a href="https://arxiv.org/abs/2503.07751">arXiv:2503.07751(2025)</a></p> <p>We introduce a  model of an active quantum particle and discuss its properties. The  particle has a set of internal states  that mediate exchanges of heat with external reservoirs. Heat is then converted into motion by means of a spin-orbit term that couples internal and translational degrees of freedom. The quantum features of the active particle manifest both in the motion and in the heat-to-motion conversion. Furthermore, the stochastic nature of heat exchanges impacts the motion of the active particle and fluctuations can be orders of magnitude larger than the average values. The combination of spin-orbit interaction under nonequilibrium driving may bring active matter into the realm of cold atomic gases where our proposal can be implemented.  </p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15843673
institution Zenodo
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publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Data for arXiv:2503.07751: "Heat-to-motion conversion for quantum active matter"
Penner, Alexander-Georg
Viotti, Ludmila
Fazio, Rosario
von Oppen, Felix
Arrachea, Liliana
<p><a href="https://arxiv.org/abs/2503.07751">arXiv:2503.07751(2025)</a></p> <p>We introduce a  model of an active quantum particle and discuss its properties. The  particle has a set of internal states  that mediate exchanges of heat with external reservoirs. Heat is then converted into motion by means of a spin-orbit term that couples internal and translational degrees of freedom. The quantum features of the active particle manifest both in the motion and in the heat-to-motion conversion. Furthermore, the stochastic nature of heat exchanges impacts the motion of the active particle and fluctuations can be orders of magnitude larger than the average values. The combination of spin-orbit interaction under nonequilibrium driving may bring active matter into the realm of cold atomic gases where our proposal can be implemented.  </p>
title Data for arXiv:2503.07751: "Heat-to-motion conversion for quantum active matter"
url https://doi.org/10.5281/zenodo.15843673